background image

2

Schematic diagrams

Figure 5. 

X-NUCLEO-OUT04A1 circuit schematic (1 of 2)

3

R134100R N.M.

5

6

36

1

IN1

R131100R N.M.

15

VCC

2

IN1

16

A4

ALTERNATE USE

D8

ST morpho connectors(N.M.)

D3

23

R102100R

PB5

J3

ALTERNATE USE

ALTERNATE USE

ALTERNATE USE

ALTERNATE USE

16

D9

36

D5

7

C6

2.2uF/100V

37

2

22

R133100R N.M.

27

R123100R N.M.

TR2
ESDA15P60-1U1M (N.M.)

PA6

PA8

J4

VCC

4

20

NRST

31

R121100R N.M.

2

PA2

PB9

D0

ALTERNATE USE

D2

BAT48JFILM (N.M.)

2

18

17

23

D10

10

28

D12

SM15T39CA

10

IN1

TR1

FLT2

1

12

CN1

CON5

IN2

38

19

R104100R

ALTERNATE USE

4

CN9

3

PC1

PA7

GND

FLT1

DEFAULT

IN1

15

IN1

OUT2

A3

1

R114100R N.M.

2

1

VIN

5

IOREF

R113100R N.M.

CN2

CON2 (N.M.)

6

8

CN5

D1STPS1H100A

ALTERNATE USE

25

1

PB6

PB0

PB4

3

32

34

default open

2

3

35

3v3

FLT2

4

PA4

FLT1

R112100R N.M.

IN2

J17

8

OUT1

24
26

29

12

5

4

34

5

1

7

19

C2
4.7nF/3kV(N.M)

2

9

38

FLT2

DEFAULT

D11

2

25

DEFAULT

ALTERNATE USE

OUT2

FLT1

21

5v0

3

IN2

3

A1

D13

9

4

13

30

26

6

R124100R N.M.

21

1

8

10

R132100R N.M.

A5

1

VIN

35

8

7

default open

(7V-12V NUCLEO supply voltage)

R122100R N.M.

6

D14

3

D7

FLT1

FLT2

4

6

FLT1

7

5V

6

30

D15

IN2

PA3

PA1

PC7

PB10

R103100R

IN2

GND

C13
N.M.(100uF)

1

8

D6

FLT1

1

27

2

2

22

C1
4.7nF/3kV(N.M)

Alternate Nucleo supply 

7 V - 12 V

13

31

A2

5

4

DEFAULT

ALTERNATE USE

2

9

7

PB8

ALTERNATE USE

ALTERNATE USE

D1

GND

29

PA10

2

37

OUT1

24

FLT2

FLT2

3V3

CN6

33

CN10

CON38

5

28

IN2

R101100R

14

A0

AVDD

11

1

EARTH

PA9

PC0

PA0

PA5

PB3

32

IN1

D4

VCC

17

1

default open

11

R111100R N.M.

D2

14

5

Analog supply

8 V - 60 V

Arduino connectors

33

20

CN7

CON38

CN8

18

UM2728

 - 

Rev 1

page 7/15

UM2728

Schematic diagrams

 

Summary of Contents for X-NUCLEO-OUT04A1

Page 1: ...d connectors The expansion board can be connected to either a NUCLEO F401RE or NUCLEO G431RB development board It is also possible to evaluate a system composed by up to four stacked X NUCLEO OUT04A1 expansion boards As an example a system with four X NUCLEO OUT04A1 expansion boards allows you to evaluate an eight channel digital output module with 5 7 A max capability each Figure 1 X NUCLEO OUT04...

Page 2: ...pation RON MAX 50 mΩ Fast decay for inductive loads Smart driving of capacitive load Under voltage lock out Per channel overload and over temperature protection PSSO24 package Application board operating range 8 to 33 V 0 to 5 7 A Extended voltage operating range J3 open up to 60 V Green LEDs for output on off status Red LEDs for per channel diagnostic overload and overheating 5 kV galvanic isolat...

Page 3: ... possible to supply the STM32 Nucleo development board by the expansion board In this case an external supply voltage 7 12 V should be connected to CN2 connector not mounted by default on the expansion board and the ground loop should be closed by mounting D2 enable the reverse polarity protection or by closing J17 without reverse polarity To supply the VIN voltage rail is necessary to close jumpe...

Page 4: ... to 1kV 2Ω coupling in common mode surge testing two single layer capacitors C1 and C2 not included must be soldered at the predisposed locations the IPS2050H 32 output stages do not require additional EMC protections with respect to the IEC61000 4 2 IEC61000 4 3 IEC61000 4 5 standards 1 2 Hardware requirements The X NUCLEO OUT04A1 expansion board is designed to be used with the NUCLEO F401RE or N...

Page 5: ...ent board Step 2 Download the firmware bin or hex onto the STM32 Nucleo development board microcontroller through STM32 ST LINK utility STM32CubeProgrammer and according to your IDE environment as detailed in the table below Table 1 NUCLEO F401RE development board supported IDEs bin files NUCLEO F401RE IAR Keil STM32CubeIDE EWARM OUT03_04 STM32F4xx_Nucleo bin MDK ARM OUT03_04 STM32F4xx_Nucleo bin ...

Page 6: ...s case the four expansion boards board 0 1 2 3 as shown in the table below must be properly configured for board 1 2 and 3 it is necessary to unsolder four resistors for each board from the default position and solder them back in the alternate positions according to the following table Table 3 Configuration of a stack of four expansion boards Board no IN1 IN2 FLT1 FLT2 Board 0 R101 R102 R103 R104...

Page 7: ...1 PB6 PB0 PB4 3 32 34 default open 2 3 35 3v3 FLT2 4 PA4 FLT1 R112100R N M IN2 J17 8 OUT1 24 26 29 12 5 4 34 5 1 7 19 C2 4 7nF 3kV N M 2 9 38 FLT2 DEFAULT D11 2 25 DEFAULT ALTERNATE USE OUT2 FLT1 21 5v0 3 IN2 3 A1 D13 9 4 13 30 26 6 R124100R N M 21 1 8 10 R132100R N M A5 1 VIN 35 8 7 default open 7V 12V NUCLEO supply voltage R122100R N M 6 D14 3 D7 FLT1 FLT2 4 6 FLT1 7 5V 6 30 D15 IN2 PA3 PA1 PC7 ...

Page 8: ... 1 2 3 default CLOSE 1 2 13 2 default CLOSE 1 2 R4 22k ISO4 TLP383 6 5 10 IN2 1 R1 27k ISO2 TLP383 2 R16 0R 1 J11 22 R6 390 4 1 1 5v0 1 6 2 J10 5 R17 0R RED LED SW2 2 TP3 IPD2 default closed default open OUT1 R9 10k 2 C11 47nF 16 FLT2 R14 10k 2 1 1 J7 DR1 2 6 1 1 2 IN2 3 default open default closed 2 default closed 1 3 default CLOSE 1 2 default close 1 23 default closed 1 1 default CLOSE 1 2 2 2 I...

Page 9: ...6V 0603 X7R Capacitors WURTH 885012206032 11 2 C8 C11 47nF 16V 0603 X7R Capacitors WURTH 885012206044 12 2 C9 C12 470nF 25V 0603 X7R Capacitors WURTH 885012206075 13 0 C13 Capacitor not mounted Any Any 14 4 ISO1 ISO2 ISO3 ISO4 VCE 80V VISO 5kV 11 4P1A Optocouplers TOSHIBA TLP383 WURTH 140100146000 15 2 R1 R2 27 kΩ 0 1 W 0603 Resistors MULTICOMP MCMR06X2702FTL 16 2 R3 R4 22 kΩ 0 1 W 0603 Resistors ...

Page 10: ...se signal Schottky diode not mounted ST BAT48JFILM 30 0 TR2 1200 W Vbr 6 8 V Vcl 10 2 V 1610 High power transient voltage suppressor not mounted ST ESDA15P60 1U1M 31 1 CN5 10 ways 1 row TH 2 54 mm Connector SAMTEC ESQ 110 14 T S 4UCON 17896 32 2 CN6 CN9 8 ways 1 row TH 2 54 mm Connectors SAMTEC ESQ 108 14 T S 4UCON 15782 33 1 CN8 6 ways 1 row TH 2 54 mm Connector SAMTEC ESQ 106 04 T S 4UCON 15781 ...

Page 11: ...Revision history Table 5 Document revision history Date Revision Changes 04 Aug 2021 1 Initial release UM2728 UM2728 Rev 1 page 11 15 ...

Page 12: ...Digital section 2 1 1 2 Power section 3 1 2 Hardware requirements 4 1 3 System requirements 5 1 4 Board setup 5 1 5 Multiple board configuration 6 2 Schematic diagrams 7 3 Bill of materials 9 Revision history 11 UM2728 Contents UM2728 Rev 1 page 12 15 ...

Page 13: ...Es bin files 5 Table 2 NUCLEO G431RB development board supported IDEs bin files 5 Table 3 Configuration of a stack of four expansion boards 6 Table 4 X NUCLEO OUT04A1 bill of materials 9 Table 5 Document revision history 11 UM2728 List of tables UM2728 Rev 1 page 13 15 ...

Page 14: ... digital interface components 3 Figure 3 X NUCLEO OUT04A1 expansion board power stage components 4 Figure 4 X NUCLEO OUT04A1 and STM32 Nucleo stack 5 Figure 5 X NUCLEO OUT04A1 circuit schematic 1 of 2 7 Figure 6 X NUCLEO OUT04A1 circuit schematic 2 of 2 8 UM2728 List of figures UM2728 Rev 1 page 14 15 ...

Page 15: ...cts and ST assumes no liability for application assistance or the design of Purchasers products No license express or implied to any intellectual property right is granted by ST herein Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product ST and the ST logo are trademarks of ST For additional information about S...

Reviews: